c
callumxvance

CALLUM VANCE

@callumxvance

Electronics and Embedded Hardware Design Engineer

Royaume-Uni
Anglais, Allemand, Français, Espagnol, Italien, Néerlandais, Grec
Certaines informations sont présentées en anglais.
À propos de moi
Electronics Engineer with 7 years of hardware design experience. I specialize in turning complex schematics into reliable, factory-ready boards optimized for manufacturing. Core skills: • Multilayer PCB layout • Signal integrity • DFM rules • BLE design • RF telematics • Embedded hardware. I work daily with STM32, ARM Cortex, Nordic nRF52, Raspberry Pi architectures using Altium, KiCad to deliver optimized wireless, industrial, high-speed computing solutions. Let’s connect to discuss your exact specifications before launching your order.... Plus d’infos

Compétences

c
callumxvance
CALLUM VANCE
hors ligne • 

Voir mes services

Cartes de circuits imprimés (PCB)
I will design nordic nrf52 ble wearable, smart sensor pcb, iot designs in cadence

Expérience professionnelle

LinkedIn

Electronics Design Engineer

LinkedIn • Indépendant

Mar 2019 - Present7 yrs 5 mos

Lead electronics design engineer specializing in high-density, multi-layer PCB layout and embedded hardware architectures. Responsible for the end-to-end development of industrial IoT modules, commercial wearable devices, and high-speed processing carrier boards. Key Achievements & Technical Scope: - Designed and routed 20+ production-ready wireless PCB architectures utilizing Nordic nRF52 BLE, LoRa, and GSM/GPS telematics systems. - Engineered complex microcontroller circuits using STM32 and ARM Cortex microprocessors, optimizing layouts for ultra-low power consumption. - Developed custom custom Linux-capable carrier boards for Raspberry Pi Compute Modules (CM4), managing high-speed signal tracks. - Enforced strict Design for Manufacturing (DFM) and Design for Assembly (DFA) rules, reducing hardware revision cycles by 40%. - Performed advanced signal integrity (SI) simulations, impedance matching, and EMI/EMC mitigation on high-frequency differential pairs.